Agritrop
Accueil

Functional shifts within central African rainforests

Bastin Jean-François, Mortier Frédéric, Rejou-Mechain Maxime, Gourlet-Fleury Sylvie, Pélissier Raphaël, Garcia Claude, Bayol Nicolas, Cornu Guillaume, Bénédet Fabrice, Doucet Jean-Louis, Fayolle Adeline. 2018. Functional shifts within central African rainforests. In : Challenges in tropical ecology and conservation - global perspectives. Forget Pierre-Michel (ed.), Reeb Catherine (ed.), Migliore Jérémy (ed.), Kuhlmann Heïke (ed.). Frankfurt am Main : gtö, Résumé, 285. ISBN 978-3-00-059300-0 European conference of tropical ecology. Annual meeting of the Society for tropical ecology (GTÖ), Paris, France, 26 Mars 2018/29 Mars 2018.

Communication avec actes
[img]
Prévisualisation
Version publiée - Anglais
Utilisation soumise à autorisation de l'auteur ou du Cirad.
ID595059.pdf

Télécharger (686kB) | Prévisualisation

Résumé : Understanding the reaction of ecosystems to climate change and anthropogenic pressure is a central question in ecology and environmental sciences. In the terrestrial tropics, theoretical and empirical works suggest that once external disturbances have reached a given threshold, forest-savanna systems can switch from one state to another. Considering the multiplicity of the tropical forest systems, we make the assumption that numerous shifts may actually occur within the forest itself, without changes in forest cover but with risks of critical modifications in forest functioning. To test this hypothesis, we used a finite mixture of regression models aiming at simultaneously predicting and grouping forest functional profiles at the stand level with respect to anthropogenic pressure, climate and soil. The model is built on a dataset of more than 140 000 plots of 0.5-ha each gathered from Central African forest companies. Forest stand functions are analyzed through two key functional traits: the successional status - pioneer vs. non-pioneer trees- and the leaf phenology - evergreen vs. deciduous trees. Our model captured a significant part of variation in the functional composition over the study area and revealed how anthropogenic pressure, climate change, soils or their combination lead to profound modifications within the forests. In particular, we showed that shifts from evergreen to deciduous stands can be mediated both by anthropogenic pressure or climate change. This work shows for the first time how external forcing may jointly lead to multiple shifts in the functional composition of tropical forests. Our model allowed to predict directional changes in forest functioning according to anthropogenic pressure and climate thus opening new perspectives in theoretical ecology, global vegetation modelling and in the understanding of the vulnerability of tropical forests to global changes.

Auteurs et affiliations

  • Bastin Jean-François, Institute of Integrative Biology (CHE)
  • Mortier Frédéric, CIRAD-ES-UPR Forêts et sociétés (FRA)
  • Rejou-Mechain Maxime, IRD (FRA)
  • Gourlet-Fleury Sylvie, CIRAD-ES-UPR Forêts et sociétés (FRA) ORCID: 0000-0002-1136-4307
  • Pélissier Raphaël, IRD (FRA)
  • Garcia Claude, CIRAD-ES-UPR Forêts et sociétés (CHE) ORCID: 0000-0002-7351-0226
  • Bayol Nicolas, Forêt ressources management (FRA)
  • Cornu Guillaume, CIRAD-ES-UPR Forêts et sociétés (FRA) ORCID: 0000-0002-7523-5176
  • Bénédet Fabrice, CIRAD-ES-UPR Forêts et sociétés (FRA) ORCID: 0000-0001-9281-5677
  • Doucet Jean-Louis, Université de Liège (BEL)
  • Fayolle Adeline, Université de Liège (BEL)

Source : Cirad-Agritrop (https://agritrop.cirad.fr/595059/)

Voir la notice (accès réservé à la Dist) Voir la notice (accès réservé à la Dist)

[ Page générée et mise en cache le 2020-02-18 ]